A whole-course-repair system based on ROS/glucose stimuli-responsive EGCG release and tunable mechanical property for efficient treatment of chronic periodontitis in diabetic rats.
Qingchen FengMei ZhangGuanning ZhangHongxiang MeiChongying SuLisa LiuXiaoxia WangZiqianhong WanZhengyi XuLiangkui HuYu NieJuan LiPublished in: Journal of materials chemistry. B (2024)
Elevated glucose levels, multiple pro-inflammatory cytokines and the generation of excessive reactive oxygen species (ROS) are pivotal characteristics within the microenvironments of chronic periodontitis with diabetes mellitus (CPDM). Control of inflammation and modulation of immune system are required in the initial phase of CPDM treatment, while late severe periodontitis requires a suitable scaffold to promote osteogenesis, rebuild periodontal tissue and reduce alveolar bone resorption. Herein, a whole-course-repair system is introduced by an injectable hydrogel using phenylboronic acid functionalized oxidized sodium alginate (OSA-PBA) and carboxymethyl chitosan (CMC). Epigallocatechin-3-gallate (EGCG) was loaded to simultaneously adjust the mechanical property of the OSA-PBA/CMC + EGCG hydrogel (OPCE). This hydrogel has distinctive adaptability, injectability, and ROS/glucose-triggered release of EGCG, making it an ideal drug delivery carrier. As expected, OPCE hydrogel shows favourable antioxidant and anti-inflammatory properties, along with a regulatory influence on the phenotypic transition of macrophages, providing a favourable immune microenvironment. Apart from that, it provides a favourable mechanical support for osteoblast/osteoclast differentiation regulation at the late proliferation stage of periodontal regeneration. The practical therapeutic effects of OPCE hydrogels were also confirmed when applied for treating periodontitis in diabetic rats. In summary, OPCE hydrogel may be a promising whole-course-repair system for the treatment of CPDM.
Keyphrases
- drug delivery
- wound healing
- diabetic rats
- hyaluronic acid
- tissue engineering
- reactive oxygen species
- oxidative stress
- cancer therapy
- anti inflammatory
- drug release
- cell death
- stem cells
- dna damage
- obstructive sleep apnea
- type diabetes
- transcription factor
- high resolution
- metabolic syndrome
- mass spectrometry
- blood pressure
- adipose tissue
- drug induced
- soft tissue
- postmenopausal women
- simultaneous determination